Antimicrobial resistance in Campylobacter fetus : Emergence and genomic evolution

Campylobacter fetus is a pathogen, which is primarily associated with fertility problems in sheep and cattle. In humans, it can cause severe infections that require antimicrobial treatment. However, knowledge on the development of antimicrobial resistance in C. fetus is limited. Moreover, the lack of epidemiological cut-off values (ECOFFs) and clinical breakpoints for C. fetus hinders consistent reporting about wild-type and non-wild-type susceptibility. The aim of this study was to determine the phenotypic susceptibility pattern of C. fetus and to determine the C. fetus resistome [the collection of all antimicrobial resistance genes (ARGs) and their precursors] to describe the genomic basis of antimicrobial resistance in C. fetus isolates over time. Whole-genome sequences of 295 C. fetus isolates, including isolates that were isolated in the period 1939 till the mid 1940s, before the usage of non-synthetic antimicrobials, were analysed for the presence of resistance markers, and phenotypic antimicrobial susceptibility was obtained for a selection of 47 isolates. C. fetus subspecies fetus (Cff) isolates showed multiple phenotypic antimicrobial resistances compared to C. fetus subspecies venerealis (Cfv) isolates that were only intrinsic resistant to nalidixic acid and trimethoprim. Cff isolates showed elevated minimal inhibitory concentrations for cefotaxime and cefquinome that were observed in isolates from 1943 onwards, and Cff isolates contained gyrA substitutions, which conferred resistance to ciprofloxacin. Resistances to aminoglycosides, tetracycline and phenicols were linked to acquired ARGs on mobile genetic elements. A plasmid-derived tet(O) gene in a bovine Cff isolate in 1999 was the first mobile genetic element observed, followed by detection of mobile elements containing tet(O)-aph(3')-III and tet(44)-ant(6)-Ib genes, and a plasmid from a single human isolate in 2003, carrying aph(3')-III-ant(6)-Ib and a chloramphenicol resistance gene (cat). The presence of ARGs in multiple mobile elements distributed among different Cff lineages highlights the risk for spread and further emergence of AMR in C. fetus. Surveillance for these resistances requires the establishment of ECOFFs for C. fetus.

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Main Authors: van der Graaf-van Bloois, Linda, Duim, Birgitta, Looft, Torey, Veldman, Kees T., Zomer, Aldert L., Wagenaar, Jaap A.
Format: Article/Letter to editor biblioteca
Language:English
Subjects:Campylobacter fetus, ECOFF, antimicrobial resistance, plasmid, whole genome sequencing,
Online Access:https://research.wur.nl/en/publications/antimicrobial-resistance-in-campylobacter-fetus-emergence-and-gen
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spelling dig-wur-nl-wurpubs-6123222024-12-04 van der Graaf-van Bloois, Linda Duim, Birgitta Looft, Torey Veldman, Kees T. Zomer, Aldert L. Wagenaar, Jaap A. Article/Letter to editor Microbial Genomics 9 (2023) 3 ISSN: 2057-5858 Antimicrobial resistance in Campylobacter fetus : Emergence and genomic evolution 2023 Campylobacter fetus is a pathogen, which is primarily associated with fertility problems in sheep and cattle. In humans, it can cause severe infections that require antimicrobial treatment. However, knowledge on the development of antimicrobial resistance in C. fetus is limited. Moreover, the lack of epidemiological cut-off values (ECOFFs) and clinical breakpoints for C. fetus hinders consistent reporting about wild-type and non-wild-type susceptibility. The aim of this study was to determine the phenotypic susceptibility pattern of C. fetus and to determine the C. fetus resistome [the collection of all antimicrobial resistance genes (ARGs) and their precursors] to describe the genomic basis of antimicrobial resistance in C. fetus isolates over time. Whole-genome sequences of 295 C. fetus isolates, including isolates that were isolated in the period 1939 till the mid 1940s, before the usage of non-synthetic antimicrobials, were analysed for the presence of resistance markers, and phenotypic antimicrobial susceptibility was obtained for a selection of 47 isolates. C. fetus subspecies fetus (Cff) isolates showed multiple phenotypic antimicrobial resistances compared to C. fetus subspecies venerealis (Cfv) isolates that were only intrinsic resistant to nalidixic acid and trimethoprim. Cff isolates showed elevated minimal inhibitory concentrations for cefotaxime and cefquinome that were observed in isolates from 1943 onwards, and Cff isolates contained gyrA substitutions, which conferred resistance to ciprofloxacin. Resistances to aminoglycosides, tetracycline and phenicols were linked to acquired ARGs on mobile genetic elements. A plasmid-derived tet(O) gene in a bovine Cff isolate in 1999 was the first mobile genetic element observed, followed by detection of mobile elements containing tet(O)-aph(3')-III and tet(44)-ant(6)-Ib genes, and a plasmid from a single human isolate in 2003, carrying aph(3')-III-ant(6)-Ib and a chloramphenicol resistance gene (cat). The presence of ARGs in multiple mobile elements distributed among different Cff lineages highlights the risk for spread and further emergence of AMR in C. fetus. Surveillance for these resistances requires the establishment of ECOFFs for C. fetus. en application/pdf https://research.wur.nl/en/publications/antimicrobial-resistance-in-campylobacter-fetus-emergence-and-gen 10.1099/mgen.0.000934 https://edepot.wur.nl/589935 Campylobacter fetus ECOFF antimicrobial resistance plasmid whole genome sequencing https://creativecommons.org/licenses/by-nc/4.0/ https://creativecommons.org/licenses/by-nc/4.0/ Wageningen University & Research
institution WUR NL
collection DSpace
country Países bajos
countrycode NL
component Bibliográfico
access En linea
databasecode dig-wur-nl
tag biblioteca
region Europa del Oeste
libraryname WUR Library Netherlands
language English
topic Campylobacter fetus
ECOFF
antimicrobial resistance
plasmid
whole genome sequencing
Campylobacter fetus
ECOFF
antimicrobial resistance
plasmid
whole genome sequencing
spellingShingle Campylobacter fetus
ECOFF
antimicrobial resistance
plasmid
whole genome sequencing
Campylobacter fetus
ECOFF
antimicrobial resistance
plasmid
whole genome sequencing
van der Graaf-van Bloois, Linda
Duim, Birgitta
Looft, Torey
Veldman, Kees T.
Zomer, Aldert L.
Wagenaar, Jaap A.
Antimicrobial resistance in Campylobacter fetus : Emergence and genomic evolution
description Campylobacter fetus is a pathogen, which is primarily associated with fertility problems in sheep and cattle. In humans, it can cause severe infections that require antimicrobial treatment. However, knowledge on the development of antimicrobial resistance in C. fetus is limited. Moreover, the lack of epidemiological cut-off values (ECOFFs) and clinical breakpoints for C. fetus hinders consistent reporting about wild-type and non-wild-type susceptibility. The aim of this study was to determine the phenotypic susceptibility pattern of C. fetus and to determine the C. fetus resistome [the collection of all antimicrobial resistance genes (ARGs) and their precursors] to describe the genomic basis of antimicrobial resistance in C. fetus isolates over time. Whole-genome sequences of 295 C. fetus isolates, including isolates that were isolated in the period 1939 till the mid 1940s, before the usage of non-synthetic antimicrobials, were analysed for the presence of resistance markers, and phenotypic antimicrobial susceptibility was obtained for a selection of 47 isolates. C. fetus subspecies fetus (Cff) isolates showed multiple phenotypic antimicrobial resistances compared to C. fetus subspecies venerealis (Cfv) isolates that were only intrinsic resistant to nalidixic acid and trimethoprim. Cff isolates showed elevated minimal inhibitory concentrations for cefotaxime and cefquinome that were observed in isolates from 1943 onwards, and Cff isolates contained gyrA substitutions, which conferred resistance to ciprofloxacin. Resistances to aminoglycosides, tetracycline and phenicols were linked to acquired ARGs on mobile genetic elements. A plasmid-derived tet(O) gene in a bovine Cff isolate in 1999 was the first mobile genetic element observed, followed by detection of mobile elements containing tet(O)-aph(3')-III and tet(44)-ant(6)-Ib genes, and a plasmid from a single human isolate in 2003, carrying aph(3')-III-ant(6)-Ib and a chloramphenicol resistance gene (cat). The presence of ARGs in multiple mobile elements distributed among different Cff lineages highlights the risk for spread and further emergence of AMR in C. fetus. Surveillance for these resistances requires the establishment of ECOFFs for C. fetus.
format Article/Letter to editor
topic_facet Campylobacter fetus
ECOFF
antimicrobial resistance
plasmid
whole genome sequencing
author van der Graaf-van Bloois, Linda
Duim, Birgitta
Looft, Torey
Veldman, Kees T.
Zomer, Aldert L.
Wagenaar, Jaap A.
author_facet van der Graaf-van Bloois, Linda
Duim, Birgitta
Looft, Torey
Veldman, Kees T.
Zomer, Aldert L.
Wagenaar, Jaap A.
author_sort van der Graaf-van Bloois, Linda
title Antimicrobial resistance in Campylobacter fetus : Emergence and genomic evolution
title_short Antimicrobial resistance in Campylobacter fetus : Emergence and genomic evolution
title_full Antimicrobial resistance in Campylobacter fetus : Emergence and genomic evolution
title_fullStr Antimicrobial resistance in Campylobacter fetus : Emergence and genomic evolution
title_full_unstemmed Antimicrobial resistance in Campylobacter fetus : Emergence and genomic evolution
title_sort antimicrobial resistance in campylobacter fetus : emergence and genomic evolution
url https://research.wur.nl/en/publications/antimicrobial-resistance-in-campylobacter-fetus-emergence-and-gen
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AT zomeraldertl antimicrobialresistanceincampylobacterfetusemergenceandgenomicevolution
AT wagenaarjaapa antimicrobialresistanceincampylobacterfetusemergenceandgenomicevolution
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